Development and Characterization of Linagliptin Microspheres Using 32 Full Factorial Design for the Management of Diabetes

Linagliptin is a dipeptidyl peptidase-4 inhibitor used to treat type 2 diabetes and is categorized as a BCS class III drug, having high solubility and low permeability, resulting in a very low bioavailability, 30%, of the drug. Microspheres have been formulated to increase the gastric retention time. The batches were formulated using a 32-full-factorial design of experiments, taking the concentration of ethyl cellulose, and speed of homogenizer as the factors, and % entrapment efficiency and particle size as the dependent parameters. The optimized batch, having 200 mg of ethyl cellulose and an 8000 rpm speed of homogenization, was formulated, which showed 80.3 % of the drug was released at the 8th hour. Mean particle size, % entrapment efficiency, and percentage yield of the optimized formulation were found to be 1.57 μm, 92%, and 96.99%. The kinetic model for the in vitro release of linagliptin microspheres was analysed, and results indicated that it followed the zero-order kinetic model based on the R² values.

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Journal
Hacettepe University Journal of the Faculty of Pharmacy
Published
2026-09-01
DOI
https://doi.org/10.52794/hujpharm.1751510
Primary Topic
Advanced Drug Delivery Systems
Type
article
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0.00

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article

Development and Characterization of Linagliptin Microspheres Using 32 Full Factorial Design for the Management of Diabetes

Dhwani Shah, Mansi Dholakia, Dinal Patel, Arpita Singh et al.
Hacettepe University Journal of the Faculty of Pharmacy
Advanced Drug Delivery Systems
article

Development and Characterization of Linagliptin Microspheres Using 32 Full Factorial Design for the Management of Diabetes

Dhwani Shah, Mansi Dholakia, Dinal Patel, Arpita Singh, Vishal Mahendrabhai Vasava, Kumar Ashish Sanjeev Kumar
article en

Abstract

Linagliptin is a dipeptidyl peptidase-4 inhibitor used to treat type 2 diabetes and is categorized as a BCS class III drug, having high solubility and low permeability, resulting in a very low bioavailability, 30%, of the drug. Microspheres have been formulated to increase the gastric retention time. The batches were formulated using a 32-full-factorial design of experiments, taking the concentration of ethyl cellulose, and speed of homogenizer as the factors, and % entrapment efficiency and particle size as the dependent parameters. The optimized batch, having 200 mg of ethyl cellulose and an 8000 rpm speed of homogenization, was formulated, which showed 80.3 % of the drug was released at the 8th hour. Mean particle size, % entrapment efficiency, and percentage yield of the optimized formulation were found to be 1.57 μm, 92%, and 96.99%. The kinetic model for the in vitro release of linagliptin microspheres was analysed, and results indicated that it followed the zero-order kinetic model based on the R² values.

Hacettepe University Journal of the Faculty of PharmacyVol. 46(3)
Dharmsinh Desai University (IN)
Dharmsinh Desai University
Openalex Percentile: Top 12%
Advanced Drug Delivery Systems
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Development and Characterization of Linagliptin Microspheres Using 32 Full Factorial Design for the Management of Diabetes — Dhwani Shah, Mansi Dholakia, et al. · Hacettepe University Journal of the Faculty of Pharmacy (2026) | TGRS Research Map | TGRS